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Adaptive inverse control of air supply flow for proton exchange membrane fuel cell systems 被引量:2

Adaptive inverse control of air supply flow for proton exchange membrane fuel cell systems
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摘要 To prevent the oxygen starvation and improve the system output performance, an adaptive inverse control (AIC) strategy is developed to regulate the air supply flow of a proton exchange membrane fuel cell (PEMFC) system in this paper. The PEMFC stack and the air supply system including a compressor and a supply manifold are modeled for the purpose of performance analysis and controller design. A recurrent fuzzy neural network (RFNN) is utilized to identify the inverse model of the controlled system and generates a suitable control input during the abrupt step change of external disturbances. Compared with the PI controller, numerical simulations are performed to validate the effectiveness and advantages of the proposed AIC strategy. To prevent the oxygen starvation and improve the system output performance, an adaptive inverse control (AIC) strategy is developed to regulate the air supply flow of a proton exchange membrane fuel cell (PEMFC) system in this paper. The PEMFC stack and the air supply system including a compressor and a supply manifold are modeled for the purpose of performance analysis and controller design. A recurrent fuzzy neural network (RFNN) is utilized to identify the inverse model of the controlled system and generates a suitable control input during the abrupt step change of external disturbances. Compared with the PI controller, numerical simulations are performed to validate the effectiveness and advantages of the proposed AIC strategy.
出处 《Journal of Shanghai University(English Edition)》 CAS 2009年第6期474-480,共7页 上海大学学报(英文版)
基金 Project supported by the National Natural Science Foundation of China (Grant No.20576071) the Natural Science Foundation of Shanghai Municipality (Grant No.08ZR1409800)
关键词 proton exchange membrane fuel cell (PEMFC) air supply system COMPRESSOR adaptive inverse control (AIC) recurrent fuzzy neural network (RFNN) proton exchange membrane fuel cell (PEMFC), air supply system, compressor, adaptive inverse control (AIC) recurrent fuzzy neural network (RFNN)
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  • 1苗青,曹广益,朱新坚.Performance analysis and fuzzy neural networks modeling of direct methanol fuel cell[J].Journal of Shanghai University(English Edition),2007,11(1):84-87. 被引量:2
  • 2Wang F C,Yang Y P,Huang C W,Chang H P,Chen H T.System identification and robust con- trol of a portable proton exchange membrane fuel-cell system[].Journal of Power Sources.2007
  • 3Danzer M A,Wilhelm J,Aschemann H,Hofer E P.Model-based control of cathode pressure and oxygen excess ratio of a PEM fuel cell system[].Journal of Power Sources.2008
  • 4Mann R F,Amphlett J C,Hooper M A I,Jensen H M,Peppley B A,Roberge P R.Development and application of a generalised steady-state electrochemi- cal model for a PEM fuel cell[].Journal of Power Sources.2000
  • 5Brown R N.Compressors: selection and sizing[]..1997
  • 6Pukrushpan J T,Stefanopoulou A G,Peng H.Modeling and control for PEM fuel cell stack sys- tem[].Proceedings of the American Control Con- ference.2002
  • 7Li C H,Zhu X J,Cao G Y,Sui S,Hu M R.Dy- namic modeling and sizing optimization of stand-alone photovoltaic power systems using hybrid energy stor- age technology[].International Journal of Renewable Energy.2009
  • 8Kim K.Dynamic proton exchange membrane fuel cell system synthesis/design and operation/control opti- mization under uncertainty[]..2008
  • 9Chun-Hua Li,Xin-Jian Zhu,Guang-Yi Cao.Identification of the hammerstein model of a PEMFCstack based on least squares support vector machine[].Journal of Power Sources.2008
  • 10METHEKAR R N,,PRASAD V,GUDI R D.Dynamicanalysis and linear control strategies for proton exchangemembrane fuel cell using a distributed parameter model[].Journal of Power Sources.2007

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